Title :
Double-output Luo converters, an advanced voltage-lift technique
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Inst., Singapore
fDate :
11/1/2000 12:00:00 AM
Abstract :
Mirror-symmetrical double-output voltages are specially required in industrial applications and computer periphery circuits. Double output DC-DC converters can convert the positive input source voltage to positive and negative output voltages by two conversion paths. Because of the effect of parasitic elements, the output voltage and power-transfer efficiency of DC-DC converters are limited. The voltage-lift technique is a popular method that is widely applied in electronic circuit design. This technique gives a good way of improving circuit characteristics, and has been successfully applied for DC-DC converters. As are single output (positive and negative output) Luo converters, double-output Luo converters are a series of new DC-DC step-up converters using only one switch. They are developed from prototypes using the advanced voltage-lift technique. These converters perform from positive to positive and negative DC-DC voltage-increase conversion with high power density, high efficiency and cheap topology in a simple structure. They are different from any other existing DC-DC step-up converters and possess many advantages including high output voltage with small ripples. Therefore these converters will be widely used in computer peripheral equipment and industrial applications, especially for high double-output voltage projects
Keywords :
DC-DC power convertors; DC-DC converters; DC-DC step-up converters; computer peripheral equipment; computer periphery circuits; conversion paths; double output DC-DC converters; double-output Luo converters; electronic circuit design; high double-output voltage projects; high efficiency; high output voltage; high power density; industrial applications; mirror-symmetrical double-output voltages; negative output voltages; output voltage efficiency; parasitic elements; positive input source voltage conversion; positive output voltages; positive to negative DC-DC voltage-increase conversion; positive to positive DC-DC voltage-increase conversion; power-transfer efficiency; voltage-lift technique;
Journal_Title :
Electric Power Applications, IEE Proceedings -
DOI :
10.1049/ip-epa:20000622